US7324065B2ExpiredUtilityA1

Antenna radiation collimator structure

Assignee: US AIR FORCEPriority: Jan 17, 2006Filed: Jan 17, 2006Granted: Jan 29, 2008
Est. expiryJan 17, 2026(expired)· nominal 20-yr term from priority
H01Q 25/005H01Q 1/38H01Q 15/10H01Q 15/0086
55
PatentIndex Score
4
Cited by
3
References
15
Claims

Abstract

An antenna radiation collimator structure is provided as including a number of resonator circuit boards oriented to form a block structure. A sheet of dielectric material is disposed between each of the number of resonator circuit boards to maintain a substantially uniform spacing between each of the resonator circuit boards. A plurality of conductive unit resonator cells may be disposed on first planar surfaces of each of the number of resonator circuit boards and a plurality of conductive strip lines may also be disposed on second planar surfaces of each of the number of resonator circuit boards. In this arrangement, radiation applied to a substantially central location of the block structure interacts with the plurality of conductive unit resonator cells and the plurality of conductive strip lines for redirecting the radiation out of front and rear facing surfaces of the block structure as respective first and second substantially collimated beams.

Claims

exact text as granted — not AI-modified
1. An antenna radiation collimator structure, comprising:
 a number of resonator circuit boards constructed and arranged to substantially form a block structure; 
 a sheet of dielectric material disposed between each of the number of resonator circuit boards and being operative to maintain a substantially uniform spacing between each of the resonator circuit boards; 
 a plurality of conductive unit resonator cells disposed on first planar surfaces of each of the number of resonator circuit boards; and 
 a plurality of conductive strip lines disposed on second planar surfaces of each of the number of resonator circuit boards, wherein radiation applied to a substantially central location of the block structure interacts with the plurality of conductive unit resonator cells and the plurality of conductive strip lines for redirecting the radiation out of front and rear facing surfaces of the block structure as respective first and second substantially collimated beams having substantially equal and oppositely directed magnitudes. 
 
   
   
     2. The antenna radiation collimator structure of  claim 1 , further including a dielectric wrapping material disposed on exterior surfaces of the block structure and being operative to securely retain the number of resonator circuit boards in predetermined alignment. 
   
   
     3. The antenna radiation collimator structure of  claim 2 , wherein the dielectric wrapping material includes at least one of plastic shrink wrap and plastic wrap. 
   
   
     4. The antenna radiation collimator structure of  claim 1 , wherein the plurality of conductive unit resonator cells are disposed on the first planar surfaces of each of the number of resonator circuit boards to form an array of conductive unit resonator cells having a predetermined number of rows and a predetermined number of columns. 
   
   
     5. The antenna radiation collimator structure of  claim 4 , wherein the array of conductive unit resonator cells includes approximately six cells to approximately sixty nine cells in each of the predetermined number of rows. 
   
   
     6. The antenna radiation collimator structure of  claim 5 , wherein the array of conductive unit resonator cells includes approximately three to approximately sixteen cells in each of the predetermined number of columns. 
   
   
     7. The antenna radiation collimator structure of  claim 1 , wherein each unit cell of the plurality of conductive unit resonator cells includes a pair of concentric split ring structures. 
   
   
     8. The antenna radiation collimator structure  claim 1 , wherein the plurality of conductive unit resonator cells are disposed on the first planar surfaces of each of the number of resonator circuit boards to include a spacing of approximately 146 millimeters center to center. 
   
   
     9. The antenna radiation collimator structure of  claim 1 , wherein each unit cell of the plurality of conductive unit resonator cells includes an outer split ring and an inner split ring. 
   
   
     10. The antenna radiation collimator structure of  claim 9 , wherein the sheet of dielectric material disposed between each of the number of resonator circuit boards includes at least one of foam and air. 
   
   
     11. The antenna radiation collimator structure of  claim 9 , wherein the outer split ring includes a first gap and the inner split ring includes a second gap whereby the first and second gaps are oriented approximately 180-degrees with respect to each other. 
   
   
     12. The antenna radiation collimator structure of  claim 1 , wherein the plurality of conductive unit resonator cells include at least one of copper, aluminum, gold and tungsten. 
   
   
     13. The antenna radiation collimator structure of  claim 1 , wherein the sheet of dielectric material disposed between each of the number of resonator circuit boards includes a material selected to be substantially transparent at microwave frequencies. 
   
   
     14. An antenna beam steering structure, comprising:
 a number of circuit boards interleaved with a number of dielectric sheet spacers to substantially form a block structure; 
 an array of resonator cells disposed on top planar surfaces of each of the number of circuit boards; 
 a number of conductive strip lines disposed on bottom planar surfaces of each of the number of circuit boards; and 
 a slot formed on a central portion of the block structure and being dimensioned to accept an antenna, wherein the antenna is inserted into the slot for providing radiation to a substantially central location of the block structure and wherein the radiation interacts with the array of resonator cells and the number of conductive strip lines for redirecting the radiation out of front and rear facing surfaces of the block structure as respective first and second substantially collimated beams having substantially equal and oppositely directed magnitudes. 
 
   
   
     15. An antenna beam steering structure, comprising:
 a number of circuit boards interleaved with a number of dielectric sheet spacers to substantially form a block structure; 
 an array of resonator cells disposed on top planar surfaces of each of the number of circuit boards; 
 a number of conductive strip lines disposed on bottom planar surfaces of each of the number of circuit boards; 
 a metallic sheet disposed on a rear facing surface of the block structure and being adapted to reflect radiation towards a front facing surface of the block structure; 
 a slot formed on a central portion of the block structure and being dimensioned to accept an antenna, wherein the antenna is inserted into the slot for providing radiation to a substantially central location of the block structure and wherein the radiation interacts with the array of resonator cells, the number of conductive strip lines and the metallic sheet for redirecting the radiation out of the front facing surface of the block structure as a first substantially collimated beams having a relatively increased beam intensity.

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